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长颈鹿运动活动的强度受太阳和月球授时因子的影响。

Intensity of giraffe locomotor activity is shaped by solar and lunar zeitgebers.

作者信息

Hart Emma E, Fennessy Julian, Hauenstein Severin, Ciuti Simone

机构信息

Laboratory of Wildlife Ecology and Behaviour, School of Biology and Environmental Science, University College Dublin, Dublin, Ireland; Giraffe Conservation Foundation, Windhoek, Namibia.

Giraffe Conservation Foundation, Windhoek, Namibia; School of Biological, Earth and Environmental Sciences, Faculty of Science, University of New South Wales (UNSW), Australia.

出版信息

Behav Processes. 2020 Sep;178:104178. doi: 10.1016/j.beproc.2020.104178. Epub 2020 Jun 17.

Abstract

Natural cycles of light and darkness shift the balance of risks and gains for animals across space and time. Entrainment to photic cycles allows animals to spatiotemporally adapt their behavioural and physiological processes in line with interplaying ecological factors, such as temperature, foraging efficiency and predation risk. Until recently, our understanding of these chronobiological processes was limited by the difficulties of 24 h observations. Technological advances in GPS biotelemetry however are now allowing us unprecedented access to long-term, fine-scale activity data. Here we use data derived from frontline technology to present the first large-scale investigation into the effects of natural fluctuations of light and darkness on the locomotor activity patterns of a threatened African mega-herbivore, the giraffe (Giraffa spp.). Using data from a remote population of Angolan giraffe (G. g. angolensis) in the northern Namib Desert, Namibia, we reveal the first full picture of giraffe chronobiology in a landscape of fear. Furthermore, we present clear evidence of the effect of moonlight on the nocturnal activity patterns of large ungulates. Our results are in line with recent research demonstrating that, rather than a fixed internal representation of time (circadian clock), many surface-dwelling ungulates have plastic activity patterns that are vulnerable to modification by external factors including light and temperature. Relatedly, we highlight important conservation management implications of rising temperatures and increasing light pollution on the chronobiology of surface-dwelling mammals.

摘要

自然的昼夜循环在空间和时间上改变了动物面临的风险与收益的平衡。与光周期同步能使动物根据温度、觅食效率和捕食风险等相互作用的生态因素,在时空上调整其行为和生理过程。直到最近,由于24小时观察的困难,我们对这些生物钟过程的理解还很有限。然而,GPS生物遥测技术的进步现在使我们能够前所未有的获取长期、精细的活动数据。在这里,我们使用来自前沿技术的数据,首次对自然的昼夜波动对一种濒危的非洲大型食草动物——长颈鹿(长颈鹿属)的运动活动模式的影响进行大规模调查。利用来自纳米比亚北部纳米布沙漠偏远地区的安哥拉长颈鹿(安哥拉长颈鹿亚种)的数据,我们揭示了在充满恐惧的环境中长颈鹿生物钟学的全貌。此外,我们提供了月光对大型有蹄类动物夜间活动模式影响的明确证据。我们的结果与最近的研究一致,即许多地面栖息的有蹄类动物没有固定的内部时间表征(生物钟),而是具有易受包括光和温度在内的外部因素影响而改变的可塑性活动模式。相关地,我们强调了温度上升和光污染增加对地面栖息哺乳动物生物钟学的重要保护管理意义。

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